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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Systematic Shape Optimization of Symmetric MIMO Antennas Using Characteristic Modes
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Systematic Shape Optimization of Symmetric MIMO Antennas Using Characteristic Modes

机译:使用特征模式的对称MIMO天线的系统形状优化

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We introduce a systematic approach to the shape optimization of compact, single-aperture MIMO antennas. Because the characteristic modes of a radiator represent its complete set of possible responses to an excitation, any port on the antenna must display the properties of a combination of one or more of these characteristic modes. By restricting our consideration to a class of symmetric antennas, the lowest order characteristic modes of a structure can be separated with practical decoupling networks, studied, and excited independently. We show that the quality factor of each characteristic mode effectively bounds the performance of any individual port excitation, and can be used to evaluate the fitness of the antenna for multiport excitation. Under this framework, we apply a genetic algorithm (GA) to synthesize low $Q$ MIMO antennas while minimizing conductor area. Feed locations are specified on the optimized shape based on the weighted excitation strength of the desired modes, and a two-port MIMO antenna is implemented and measured, verifying the proposed theory.
机译:我们介绍了一种系统化的方法来优化紧凑型单孔MIMO天线的形状。因为辐射器的特征模式代表其对激发的可能响应的完整集合,所以天线上的任何端口都必须显示这些特征模式中一个或多个的组合的属性。通过将我们的考虑限制在一类对称天线上,可以用实际的去耦网络来分离结构的最低阶特征模式,并对其进行独立研究和激励。我们表明,每个特征模式的品质因数有效地限制了任何单个端口激励的性能,并且可以用于评估多端口激励的天线适用性。在此框架下,我们应用遗传算法(GA)合成低$ Q $ MIMO天线,同时将导体面积最小化。根据所需模式的加权激励强度在优化形状上指定馈电位置,并实现并测量了两端口MIMO天线,从而验证了所提出的理论。

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